Automated Thermal Cycling Drying Device

By using symmetrically distributed drying parts and adjustment parts in the automated thermal cycle drying device, the problem of uneven heating at the edges and corners of the fabric is solved, and the multi-directional uniform drying of the fabric is achieved, and the drying efficiency is improved.

CN116379737BActive Publication Date: 2025-07-04WUJIANG HAIJIAO IND FABRIC CO LTD
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Patent Information

Application Number
CN202310336409.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-31
Publication Date
2025-07-04
Estimated Expiration
2043-03-31

AI Technical Summary

Technical Problem

During the drying process of fabrics, the heat of the edges and corners is uneven, resulting in the inability to completely dry.

Method used

The drying production structure including the first drying member and the second drying member is adopted. The two are symmetrically distributed and meshed and connected, and combined with the corner drying part, the bottom drying part and the reciprocating adjustment part, the corner drying part and the bottom drying part are driven to adjust the position by the reciprocating adjustment part to realize multi-directional drying.

Benefits of technology

It improves the uniformity and efficiency of fabric drying, ensures that the edges and corners and bottom positions can be fully heated, reduces insufficient drying, and realizes the cyclic reciprocating drying function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of fabric drying, specifically an automated thermal cycle drying device, which includes a drying production structure for drying fabrics. The drying production structure includes a first drying component and a second drying component. The first drying component and the second drying component are symmetrically distributed and are meshingly connected to each other. The first drying component includes a corner drying part, a bottom surface drying part, and a reciprocating adjustment part. One side of the upper end of the reciprocating adjustment part is fixedly connected to the corner drying part, and the other side of the upper end of the reciprocating adjustment part is fixedly connected to the bottom surface drying part. The corner drying part is used for drying the upper position and the corner positions of the fabric. Through the setting of the drying production structure, the purpose of drying treatment at multiple positions is achieved.
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Description

Technical Field

[0001] The present invention relates to the field of fabric drying, and more specifically to an automated thermal cycle drying device. Background Art

[0002] The heat source used by the dryer is either the pure hot air provided by a hot blast stove or the pure hot air generated by heating with electric heating tubes. The hot air temperature is adjustable and controllable. After the hot air enters the dryer, the high-temperature and high-humidity axial flow fan in the box penetrates through the materials in the box and circulates. The circulation direction is automatically controlled by an instrument to reverse, and the time can be set arbitrarily. Generally, the direction is changed once every 30 minutes or more, and moisture is discharged naturally through the louvered moisture discharge port in the middle of the dryer. In this way, each layer of materials can be dried evenly and quickly.

[0003] Currently, when the automated thermal cycle drying device is in use, since the fabric is continuously conducted and stays in the machine for a short time, it is easy to cause uneven heating at the corner positions, and there is a phenomenon of incomplete drying. When the fabric is dried, it is necessary to ensure as uniform heating as possible to achieve the purpose of stable fabric circulation drying. Therefore, a device is needed to improve the above problems. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides an automated thermal cycle drying device.

[0005] The technical solution adopted by the present invention to solve its technical problems is: an automated thermal cycle drying device, including a drying production structure for drying fabrics.

[0006] The drying production structure includes a first drying component and a second drying component. The first drying component and the second drying component are symmetrically distributed and are meshed with each other. The combination of the first drying component and the second drying component can perform the drying treatment work on both sides.

[0007] The first drying component includes a corner drying part, a bottom surface drying part, and a reciprocating adjustment part. One side of the upper end of the reciprocating adjustment part is fixedly connected with the corner drying part, and the other side of the upper end of the reciprocating adjustment part is fixedly connected with the bottom surface drying part. The combination of the first drying component and the second drying component is convenient for adjustment and better for performing the drying treatment work on the detailed positions.

[0008] The corner drying part is used for drying the upper part and the corner positions of the fabric.

[0009] The bottom surface drying part is used for drying the lower part and the corner positions of the fabric.

[0010] The reciprocating adjustment part is used for the adjustment of the corner drying part and the bottom drying part. Through the movement of the reciprocating adjustment part, the corner drying part and the bottom drying part are movably connected.

[0011] Specifically, a heat insulation top plate is sleeved on the top of the drying production structure. The lower end of the heat insulation top plate is fixedly connected with a heat insulation side frame. The front end of the heat insulation side frame is fixedly connected with a heat insulation panel. The upper end of the heat insulation panel is fixedly connected with a conduction side frame. The front end of the conduction side frame is rotatably connected with a conduction rotating shaft. The heat insulation top plate, the heat insulation side frame and the heat insulation panel are combined to protect and place the drying production structure. The conduction rotating shaft rotates on the conduction side frame to transfer the fabric.

[0012] Specifically, the corner drying part includes a first drying arc panel, a support connecting frame, a rotating guide rod, a reduction motor and a limiting side plate. The upper end of the reduction motor is fixedly connected with a rotating guide rod. The upper end of the rotating guide rod is fixedly connected with a support connecting frame. The upper end of the support connecting frame is fixedly connected with a first drying arc panel. The side end of the first drying arc panel is connected with a first drying adjustment plate. The side end of the first drying adjustment plate is fixedly connected with a second drying adjustment plate. The first drying adjustment plate and the second drying adjustment plate are communicated through a ventilation pipe. The first drying adjustment plate and the second drying adjustment plate are limited and slide on the limiting side plate. The structure settings of the first drying arc panel, the support connecting frame, the rotating guide rod, the reduction motor and the limiting side plate can carry out the adjustment and drying work on one side.

[0013] Specifically, the side end of the first drying arc panel is hinged with a third connecting frame. The upper end of the third connecting frame is hinged with a second connecting frame. A first round rod is inserted into the center of the second connecting frame. The rear end of the first round rod is hinged with a first connecting frame. The lower end of the first connecting frame is hinged with the first drying adjustment plate.

[0014] Specifically, the bottom drying part includes a connecting guide support rod and a supporting sleeve frame. The upper end of the connecting guide support rod is fixedly sleeved with a supporting sleeve frame. The upper end of the supporting sleeve frame is fixedly connected with a supporting arc plate. The upper end of the supporting arc plate is elastically connected with a second drying arc panel. The side end of the supporting arc plate is hinged with a fifth connecting frame through a fourth connecting frame and a second round rod. The side end of the fifth connecting frame is hinged with a third drying adjustment plate. The third drying adjustment plate is limited and slidably connected through a fixing plate, which is convenient for carrying out the drying treatment work at the bottom position.

[0015] Specifically, the first drying adjustment plate, the second drying adjustment plate and the third drying adjustment plate all include a hot air outlet, a heat conducting metal plate and a connecting guide ventilation seat. The upper end of the connecting guide ventilation seat is communicated with the hot air outlet, and the side end of the connecting guide ventilation seat is fixedly connected with a heat conducting metal plate. The heat conducting metal plate is designed in a fork shape structure, which can better enhance the drying performance.

[0016] Specifically, the reciprocating adjustment part includes a driving rod and a semi-toothed ring. The rear end of the driving rod is fixedly connected with the semi-toothed ring. The rear end of the semi-toothed ring is fixedly connected with a derivation arc seat. The upper part of the derivation arc seat is fixedly connected with a combined bracket. The side end of the derivation arc seat is fixedly connected with a limiting arc frame. The side end of the limiting arc frame is slidably connected with a movable arc plate. The upper end of the movable arc plate is hinged with an adjustment push plate through a connecting rod. The lower end of the adjustment push plate is hinged with a positioning guide rod through a matching hinge frame, and the positioning guide rod is in a limiting state. The center of the matching hinge frame is hinged with a seventh connecting frame. The rear end of the seventh connecting frame is hinged with a sixth connecting frame. The rear end of the sixth connecting frame is fixedly connected with a derivation arc seat, which is convenient for adjustment and realizes the driving and control work.

[0017] Specifically, the derivation arc seat is connected to the rear end of the supporting arc plate through a combined bracket. The first drying component and the second drying component are meshed and connected through a semi-toothed ring. The upper end of the movable arc plate is fixedly connected with a reduction motor. The limiting side plate is fixedly connected with the heat-insulating side frame. The positioning guide rod is sleeved and limited with the heat-insulating panel. A motor is provided at the connection position of the driving rod and the heat-insulating panel. The driving rod is rotated by the motor, and the motor only performs reciprocating rotation adjustment of °.

[0018] Specifically, the rear end of the movable arc plate is hinged with a second hinge column. A hydraulic cylinder is installed at the lower end of the second hinge column. A first hinge column is provided at the bottom of the hydraulic cylinder, and the hydraulic cylinder is hinged with the heat-insulating side frame through the first hinge column.

[0019] Specifically, an insulating seat is provided at the center of the first drying component and the second drying component, and the insulating seat is fixed to the heat-insulating panel. A heating resistance wire is wound around the insulating seat.

[0020] The beneficial effects of the present invention are as follows:

[0021] First, the present invention wraps the drying production structure through the heat-insulating top plate, heat-insulating side frame, and heat-insulating panel to enclose the internal environment and improve the heat storage efficiency. The conduction rotating shaft is rotatably connected to the conduction side frame for fabric transmission. The first drying component and the second drying component are symmetrically arranged for multi-directional drying of the fabric, reducing the phenomenon of insufficient drying at the corners. The first drying component is internally provided with a corner drying part, a bottom drying part, and a reciprocating adjustment part. The reciprocating adjustment part can adjust the corner drying part and the bottom drying part, so that the corner drying part and the bottom drying part can adjust the position and angle along with the adjustment of the reciprocating adjustment part. And through the reciprocating drive of the reciprocating adjustment part, movable drying work can be carried out, making the contact range between the device and the fabric wider and realizing the cyclic reciprocating drying function.

[0022] Second, through the structural setting of the corner drying part, the reduction motor at the inner end of the corner drying part can drive the support connecting frame and the rotating guide rod to rotate and adjust, so as to change the position of the first drying arc panel. The first drying arc panel can push the first drying adjustment plate and the second drying adjustment plate through the first connecting frame, the first round rod, the second connecting frame, and the third connecting frame, so that the first drying adjustment plate and the second drying adjustment plate slide and adjust on the limit side plate, facilitating the reciprocating adjustment type drying operation. The connecting guide rod and the supporting sleeve frame at the inner end of the bottom surface drying part can change their positions through the control of the reciprocating adjustment part, driving the supporting arc plate and the second drying arc panel to adjust. Through the fourth connecting frame, the second round rod, and the fifth connecting frame, the hot air outlet, the heat conducting metal plate, and the connecting ventilation seat can be driven to adjust on the fixed plate, facilitating the cooperation with the corner drying part to carry out the drying treatment work at the upper and lower ends and the corner positions. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The present invention will be further described below in conjunction with the drawings and embodiments.

[0024] Figure 1 It is a front perspective three-dimensional structure schematic diagram of the main body in the present invention;

[0025] Figure 2 It is a front perspective three-dimensional structure schematic diagram of the drying production structure in the present invention;

[0026] Figure 3 It is an exploded view of the drying production structure in the present invention;

[0027] Figure 4 It is a front perspective three-dimensional structure schematic diagram of the first drying component in the present invention;

[0028] Figure 5 It is an exploded view of the first drying component in the present invention;

[0029] Figure 6 It is a front perspective three-dimensional structure schematic diagram of the corner drying part in the present invention;

[0030] Figure 7 It is an enlarged view of part A of the corner drying part in the present invention;

[0031] Figure 8 It is a front perspective three-dimensional structure schematic diagram of the bottom surface drying part in the present invention;

[0032] Figure 9 It is an enlarged view of part B of the bottom surface drying part in the present invention;

[0033] Figure 10 It is a front perspective three-dimensional structure schematic diagram of the reciprocating adjustment part in the present invention;

[0034] Figure 11Schematic diagram of the three-dimensional structure of the front view of the second embodiment of the main body in the present invention;

[0035] Figure 12 Schematic diagram of the three-dimensional structure of the front view of the third embodiment of the main body in the present invention.

[0036] In the figure: 1 - heat insulation top plate, 2 - conduction side frame, 3 - conduction rotating shaft, 4 - heat insulation side frame, 5 - heat insulation panel, 6 - drying production structure, 7 - first drying component, 8 - second drying component, 9 - corner drying part, 10 - bottom surface drying part, 11 - reciprocating adjustment part, 12 - first drying arc panel, 13 - support connecting frame, 14 - rotating guide rod, 15 - reduction motor, 16 - first drying adjustment plate, 17 - second drying adjustment plate, 18 - limit side plate, 19 - ventilation pipe, 20 - first connecting frame, 21 - first round rod, 22 - second connecting frame, 23 - third connecting frame, 24 - second drying arc panel, 25 - supporting arc plate, 26 - connecting guide rod, 27 - supporting sleeve frame, 28 - fourth connecting frame, 29 - second round rod, 30 - fifth connecting frame, 31 - fixing plate, 32 - hot air outlet, 33 - heat conducting metal plate, 34 - connecting guide ventilation seat, 35 - limit arc frame, 36 - connecting rod, 37 - adjusting push plate, 38 - movable arc plate, 39 - sixth connecting frame, 40 - seventh connecting frame, 41 - matching hinge frame, 42 - positioning guide rod, 43 - driving rod, 44 - semi-toothed ring, 45 - derivation arc seat, 46 - combined support, 47 - first hinge column, 48 - hydraulic cylinder, 49 - second hinge column, 50 - insulating seat, 51 - heating resistance wire. Detailed implementation manners

[0037] In order to enable those skilled in the art to better understand the solution of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0038] It should be noted that the terms "first", "second", etc. in the description and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so as to describe the embodiments of the present application here. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units does not necessarily need to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0039] The present invention will be further described below in conjunction with the accompanying drawings. Embodiment 1

[0040] As Figures 1-10 shown, the automated thermal cycle drying device of the present invention includes a drying production structure 6 for drying fabrics.

[0041] The drying production structure 6 includes a first drying component 7 and a second drying component 8. The first drying component 7 and the second drying component 8 are symmetrically distributed and are meshed and connected between them. The first drying component 7 and the second drying component 8 can perform drying treatment work at both ends.

[0042] The first drying component 7 includes a corner drying part 9, a bottom surface drying part 10, and a reciprocating adjustment part 11. One side of the upper end of the reciprocating adjustment part 11 is fixedly connected to the corner drying part 9, and the other side of the upper end of the reciprocating adjustment part 11 is fixedly connected to the bottom surface drying part 10. Through drive adjustment of the reciprocating adjustment part 11, it can drive the corner drying part 9 and the bottom surface drying part 10 to move, thereby improving the drying efficiency.

[0043] The corner drying part 9 is used for drying the upper part and corner positions of the fabric.

[0044] The bottom surface drying part 10 is used for drying the lower part and corner positions of the fabric.

[0045] The reciprocating adjustment part 11 is used for adjusting the corner drying part 9 and the bottom surface drying part 10. Through the movement of the reciprocating adjustment part 11, it drives the corner drying part 9 and the bottom surface drying part 10 to be movably connected.

[0046] The top of the drying production structure 6 is sleeved with a heat insulation top plate 1. The lower end of the heat insulation top plate 1 is fixedly connected to a heat insulation side frame 4. The front end of the heat insulation side frame 4 is fixedly connected to a heat insulation panel 5. The upper end of the heat insulation panel 5 is fixedly connected to a conduction side frame 2. The front end of the conduction side frame 2 is rotatably connected to a conduction rotating shaft 3. The heat insulation top plate 1, the heat insulation side frame 4, and the heat insulation panel 5 are combined to protect and place the drying production structure 6. The conduction rotating shaft 3 rotates on the conduction side frame 2 for fabric transmission. The combination of the heat insulation top plate 1, the heat insulation side frame 4, and the heat insulation panel 5 performs the sealing protection work of the drying production structure 6. At the same time, the conduction side frame 2 is used for connecting the conduction rotating shaft 3, and the conduction rotating shaft 3 can rotate to facilitate fabric conduction work.

[0047] The corner drying part 9 includes a first drying arc panel 12, a support connecting frame 13, a rotating guide rod 14, a reduction motor 15 and a limit side plate 18. The upper end of the reduction motor 15 is fixedly connected to the rotating guide rod 14. The upper end of the rotating guide rod 14 is fixedly connected to the support connecting frame 13. The upper end of the support connecting frame 13 is fixedly connected to the first drying arc panel 12. The side end of the first drying arc panel 12 is connected to a first drying adjustment plate 16. The side end of the first drying adjustment plate 16 is fixedly connected to a second drying adjustment plate 17. The first drying adjustment plate 16 and the second drying adjustment plate 17 are connected and communicated through a ventilation pipe 19. The first drying adjustment plate 16 and the second drying adjustment plate 17 are limited and slide on the limit side plate 18. Through driving, the reduction motor 15 can drive the rotating guide rod 14 to move, so that the upper first drying arc panel 12 and the support connecting frame 13 follow to move. At the same time, under the movement connection of the first drying arc panel 12, the first drying adjustment plate 16 and the second drying adjustment plate 17 can perform displacement adjustment work on the limit side plate 18.

[0048] The side end of the first drying arc panel 12 is hinged to a third connecting frame 23. The upper end of the third connecting frame 23 is hinged to a second connecting frame 22. A first round rod 21 is inserted into the center of the second connecting frame 22. The rear end of the first round rod 21 is hinged to a first connecting frame 20. The lower end of the first connecting frame 20 is hinged to the first drying adjustment plate 16. The combined connection of the third connecting frame 23, the second connecting frame 22, the first connecting frame 20 and the first round rod 21 is used for power transmission work.

[0049] The bottom surface drying part 10 includes a connecting guide support rod 26 and a supporting sleeve frame 27. The upper end of the connecting guide support rod 26 is fixedly sleeved with the supporting sleeve frame 27. The upper end of the supporting sleeve frame 27 is fixedly connected to a supporting arc plate 25. The upper end of the supporting arc plate 25 is elastically connected to a second drying arc panel 24. The side end of the supporting arc plate 25 is hinged to a fifth connecting frame 30 through a fourth connecting frame 28 and a second round rod 29. The side end of the fifth connecting frame 30 is hinged to a third drying adjustment plate. The third drying adjustment plate is limited and slidably connected through a fixing plate 31. The first drying adjustment plate 16, the second drying adjustment plate 17 and the third drying adjustment plate all include a hot air outlet 32, a heat conducting metal plate 33 and a connecting guide ventilation seat 34. The upper end of the connecting guide ventilation seat 34 is connected and communicated with the hot air outlet 32. And the side end of the connecting guide ventilation seat 34 is fixedly connected to the heat conducting metal plate 33. The heat conducting metal plate 33 is designed in a fork-shaped structure. The second drying arc panel 24 can also be adjusted in position under the action of the fourth connecting frame 28, the second round rod 29 and the fifth connecting frame 30. And the hot air outlet 32 is connected and communicated with the connecting guide ventilation seat 34 for air guiding work. At the same time, the heat conducting metal plate 33 is used for contact heating treatment work.

[0050] The reciprocating adjustment part 11 includes a driving rod 43 and a semi-toothed ring 44. The rear end of the driving rod 43 is fixedly connected to the semi-toothed ring 44. The rear end of the semi-toothed ring 44 is fixedly connected to a derivation arc seat 45. The upper part of the derivation arc seat 45 is fixedly connected to a combined bracket 46. The side end of the derivation arc seat 45 is fixedly connected to a limiting arc frame 35. The side end of the limiting arc frame 35 is slidably connected to a movable arc plate 38. The upper end of the movable arc plate 38 is hinged to an adjustment push plate 37 through a connecting rod 36. The lower end of the adjustment push plate 37 is hinged to a positioning guide rod 42 through a matching hinge bracket 41, and the positioning guide rod 42 is kept in a limiting state. The center of the matching hinge bracket 41 is hinged to a seventh connecting bracket 40. The rear end of the seventh connecting bracket 40 is hinged to a sixth connecting bracket 39. The rear end of the sixth connecting bracket 39 is fixedly connected to the derivation arc seat 45. The derivation arc seat 45 is connected to the rear end of the supporting arc plate 25 through the combined bracket 46. The first drying component 7 and the second drying component 8 are meshed and connected through the semi-toothed ring 44. The upper end of the movable arc plate 38 is fixedly connected to the reduction motor 15. The limiting side plate 18 is fixedly connected to the heat insulation side frame 4. The positioning guide rod 42 is sleeved and limited with the heat insulation panel 5. A motor is provided at the connection position of the driving rod 43 and the heat insulation panel 5. The driving rod 43 is driven to rotate by the motor, and the motor only performs a reciprocating rotation adjustment of 120°.

[0051] The working principle of Embodiment 1 is as follows: When in use, the heat insulation top plate 1, the conduction side frame 2, the conduction rotating shaft 3, the heat insulation side frame 4, the heat insulation panel 5, and the drying production structure 6 are combined. The drying production structure 6 is built inside the heat insulation top plate 1, the heat insulation side frame 4, and the heat insulation panel 5. Through the internal channels, the fabric can be continuously transported. The conduction rotating shaft 3 at the upper end of the conduction side frame 2 can rotate to facilitate the conduction of the fabric.

[0052] When the fabric reaches the central position of the first drying component 7 and the second drying component 8, drying treatment is carried out. The first drying component 7 and the second drying component 8 are symmetrically designed to be able to perform two-stage drying treatment work.

[0053] When the fabric is inside the corner drying part 9 and the bottom surface drying part 10, the ventilation pipe 19 transports the hot air from the outside and conducts it to the inner ends of the first drying arc panel 12, the first drying adjustment plate 16, and the second drying adjustment plate 17. The first drying arc panel 12, the first drying adjustment plate 16, and the second drying adjustment plate 17 are integrally connected through pipes. The user can drive the reduction motor 15. The reduction motor 15 drives the rotating guide rod 14 to rotate, thereby changing the angular positions of the first drying arc panel 12 and the supporting connecting bracket 13. At the same time, the upper end of the first drying arc panel 12 is connected to a third connecting bracket 23. The third connecting bracket 23, the second connecting bracket 22, the first round rod 21, and the first connecting bracket 20 are hinged to enable power transmission, so that the first drying adjustment plate 16 and the second drying adjustment plate 17 are adjusted in position on the limiting side plate 18, thereby performing the reciprocating adjustment work of the drying position.

[0054] When the fabric is on the bottom drying part 10, the inner end of the bottom drying part 10 is connected to the guiding support rod 26 and the supporting sleeve frame 27 for bottom bearing. Through the movement control of the reciprocating adjustment part 11, the positions of the guiding support rod 26 and the supporting sleeve frame 27 can be changed, so that the guiding support rod 26 and the supporting sleeve frame 27 drive the second drying arc panel 24 and the supporting arc panel 25 to move. The supporting arc panel 25 transmits power through the fourth connecting frame 28, the second round rod 29, and the fifth connecting frame 30, so that the third drying adjustment plate can also adjust its position on the fixing plate 31. At the same time, the connecting ventilation base 34 is connected to the hot air outlet 32 to conduct hot air to assist in the drying work. At the same time, the surface of the heat-conducting metal plate 33 conducts heat and contacts the fabric to perform the contact drying work on the fabric surface;

[0055] Through the setting of the reciprocating adjustment part 11, it is convenient to adjust the positions of the corner drying part 9 and the bottom drying part 10. The movable arc plate 38 is connected to the corner drying part 9, and the connecting rod 36 is connected to the bottom drying part 10. Driven by the driving rod 43, the semi-toothed ring 44 can be driven to move. The positioning guide rod 42 is used to cooperate with the limit connection of the hinge frame 41. When the semi-toothed ring 44 rotates, it can drive the derivation arc seat 45, the combined support 46, and the limit arc frame 35 to adjust their positions. At the same time, when the derivation arc seat 45 moves, it can drive the sixth connecting frame 39 to move. The sixth connecting frame 39 can drive the seventh connecting frame 40 to move. The seventh connecting frame 40 is connected to the cooperating hinge frame 41 and can drive the cooperating hinge frame 41 to adjust, so that the connected adjustment push plate 37 moves. The adjustment push plate 37 can drive the movable arc plate 38 to slide on the limit arc frame 35 through the connecting rod 36, thereby changing the positions of the corner drying part 9 and the bottom drying part 10 at the same time. The first drying component 7 and the second drying component 8 are meshed by the semi-toothed ring 44 and can be driven reciprocally to drive the corner drying part 9 and the bottom drying part 10 to move reciprocally to achieve the purpose of drying treatment. Embodiment 2

[0056] On the basis of Embodiment 1, as Figure 11 shown, a second hinge column 49 is hinged to the rear end of the movable arc plate 38. A hydraulic cylinder 48 is installed at the lower end of the second hinge column 49. A first hinge column 47 is provided at the bottom of the hydraulic cylinder 48, and the hydraulic cylinder 48 is hinged to the heat-insulating side frame 4 through the first hinge column 47.

[0057] When implementing this embodiment, when the movable arc plate 38 is moving, an unstable phenomenon will occur. At this time, through the structural settings of the first hinge column 47, the hydraulic cylinder 48, and the second hinge column 49, the support work at the bottom position can be carried out. The hydraulic cylinder 48 can adjust the angle through the first hinge column 47, and the hydraulic cylinder 48 can be stretched and adjusted, which is convenient for carrying out the bearing support work. Embodiment 3

[0058] Based on Embodiment 2, as Figure 12 shown, an insulating seat 50 is provided at the center of the first drying component 7 and the second drying component 8, and the insulating seat 50 is fixed to the heat insulation panel 5. A heating resistance wire 51 is wound around the insulating seat 50.

[0059] When implementing this embodiment, the insulating seat 50 and the heating resistance wire 51 are connected in combination. The heating resistance wire 51 is located above the insulating seat 50. By being powered on, the heating resistance wire 51 can perform surface heating, thereby continuously heating the inside of the equipment and improving the drying efficiency.

[0060] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Automatic thermal cycling drying device, characterized in that: It includes a drying production structure (6) which is used for drying fabrics. The drying production structure (6) includes a first drying component (7) and a second drying component (8). The first drying component (7) and the second drying component (8) are symmetrically distributed and are meshed and connected between them. The first drying component (7) includes a corner drying part (9), a bottom surface drying part (10) and a reciprocating adjustment part (11). One side of the upper end of the reciprocating adjustment part (11) is fixedly connected to the corner drying part (9), and the other side of the upper end of the reciprocating adjustment part (11) is fixedly connected to the bottom surface drying part (10). The corner drying part (9) is used for drying the upper position and the corner positions of the fabric. The bottom surface drying part (10) is used for drying the lower position and the corner positions of the fabric. The reciprocating adjustment part (11) is used for adjusting the corner drying part (9) and the bottom surface drying part (10). Through the movement of the reciprocating adjustment part (11), the corner drying part (9) and the bottom surface drying part (10) are movably connected. The reciprocating adjustment part (11) includes a driving rod (43) and a semi-tooth ring (44). The rear end of the driving rod (43) is fixedly connected to the semi-tooth ring (44). The rear end of the semi-tooth ring (44) is fixedly connected to a derivation arc seat (45). The upper part of the derivation arc seat (45) is fixedly connected to a combined support (46). The side end of the derivation arc seat (45) is fixedly connected to a limiting arc frame (35). The side end of the limiting arc frame (35) is slidably connected to a movable arc plate (38). The upper end of the movable arc plate (38) is hinged to an adjusting push plate (37) through a connecting rod (36). The lower end of the adjusting push plate (37) is hinged to a positioning guide rod (42) through a matching hinge frame (41), and the positioning guide rod (42) is kept in a limiting state. The center of the matching hinge frame (41) is hinged to a seventh connecting frame (40). The rear end of the seventh connecting frame (40) is hinged to a sixth connecting frame (39). The rear end of the sixth connecting frame (39) is fixedly connected to the derivation arc seat (45). The derivation arc seat (45) is connected to the rear end of the supporting arc plate (25) through the combined support (46). The first drying component (7) and the second drying component (8) are meshed and connected through the semi-tooth ring (44). The upper end of the movable arc plate (38) is fixedly connected to a reduction motor (15). The limiting side plate (18) is fixedly connected to the heat insulation side frame (4). The positioning guide rod (42) is sleeved on the heat insulation panel (5) in a limiting manner. A motor is provided at the connection position of the driving rod (43) and the heat insulation panel (5). The driving rod (43) is driven to rotate by the motor, and the motor only makes a reciprocating rotation adjustment of 120°.

2. The automated thermal cycle drying device according to claim 1, wherein: The top of the drying production structure (6) is sleeved with a heat insulation top plate (1). The lower end of the heat insulation top plate (1) is fixedly connected with a heat insulation side frame (4). The front end of the heat insulation side frame (4) is fixedly connected with a heat insulation panel (5). The upper end of the heat insulation panel (5) is fixedly connected with a conduction side frame (2). The front end of the conduction side frame (2) is rotatably connected with a conduction rotating shaft (3). The heat insulation top plate (1), the heat insulation side frame (4), and the heat insulation panel (5) are combined to protect and place the drying production structure (6). The conduction rotating shaft (3) rotates on the conduction side frame (2) to transfer the fabric.

3. The automated thermal cycle drying device according to claim 2, wherein: The corner drying part (9) includes a first drying arc panel (12), a support connecting frame (13), a rotating guide rod (14), a reduction motor (15), and a limit side plate (18). The upper end of the reduction motor (15) is fixedly connected with a rotating guide rod (14). The upper end of the rotating guide rod (14) is fixedly connected with a support connecting frame (13). The upper end of the support connecting frame (13) is fixedly connected with a first drying arc panel (12). The side end of the first drying arc panel (12) is connected with a first drying adjusting plate (16). The side end of the first drying adjusting plate (16) is fixedly connected with a second drying adjusting plate (17). The first drying adjusting plate (16) and the second drying adjusting plate (17) are connected and communicated through a ventilation pipe (19). The first drying adjusting plate (16) and the second drying adjusting plate (17) are limited and slide on the limit side plate (18).

4. The automated thermal cycle drying device according to claim 3, wherein: The side end of the first drying arc panel (12) is hinged with a third connecting frame (23). The upper end of the third connecting frame (23) is hinged with a second connecting frame (22). A first round rod (21) is inserted into the center of the second connecting frame (22). The rear end of the first round rod (21) is hinged with a first connecting frame (20). The lower end of the first connecting frame (20) is hinged with the first drying adjusting plate (16).

5. The automated thermal cycle drying device according to claim 4, characterized in that: The bottom drying part (10) includes a connecting guide support rod (26) and a supporting sleeve frame (27). The upper end of the connecting guide support rod (26) is fixedly sleeved with a supporting sleeve frame (27). The upper end of the supporting sleeve frame (27) is fixedly connected with a supporting arc plate (25). The upper end of the supporting arc plate (25) is elastically connected with a second drying arc panel (24). The side end of the supporting arc plate (25) is hinged with a fifth connecting frame (30) through a fourth connecting frame (28) and a second round rod (29). The side end of the fifth connecting frame (30) is hinged with a third drying adjusting plate. The third drying adjusting plate is limited and slidably connected through a fixing plate (31).

6. The automated thermal cycle drying device according to claim 5, wherein: The first drying adjusting plate (16), the second drying adjusting plate (17), and the third drying adjusting plate all include a hot air outlet (32), a heat conducting metal plate (33), and a connecting ventilation seat (34). The upper end of the connecting ventilation seat (34) is connected and communicated with the hot air outlet (32). The side end of the connecting ventilation seat (34) is fixedly connected with a heat conducting metal plate (33). The heat conducting metal plate (33) is designed in a fork-shaped structure.

7. The automated thermal cycle drying device according to claim 6, wherein: The rear end of the movable arc plate (38) is hinged with a second hinge column (49). A hydraulic cylinder (48) is installed at the lower end of the second hinge column (49). A first hinge column (47) is provided at the bottom of the hydraulic cylinder (48), and the hydraulic cylinder (48) is hinged to the heat-insulating side frame (4) through the first hinge column (47).

8. The automated thermal cycle drying device according to claim 7, wherein: An insulating seat (50) is provided at the center of the first drying component (7) and the second drying component (8), and the insulating seat (50) is fixed to the heat-insulating panel (5). A heating resistance wire (51) is wound around the insulating seat (50).

Citation Information

Patent Citations

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